| Titre : | Experimental Methods and Instrumentation for Chemical Engineers |
| Type de document : | Monographie imprimée |
| Année de publication : | 2026 |
| ISBN/ISSN/EAN : | 978-99691-21025-- |
| Format : | 1VOL.(48p) / ill.couv.ill.en coul / 30cm |
| Langues: | Anglais |
| Langues originales: | Anglais |
| Index. décimale : | 660.28 |
| Résumé : |
This book contains information obtained from highly regarded resources. Reprinted material sources are indicated. Copyright for individual articles remains with the authors as indicated and published under Creative Commons License. A Wide variety of references are listed. Reasonable efforts have been made to publish reliable data and views articulated in the chapters are those of the individual contributors, and not necessarily those of the editors or publishers. Editors or publishers are not responsible for the accuracy of the information in the published chapters or consequences of their use. The publisher assumes no responsibility for any damage or grievance to the persons or property arising out of the use of any materials, instructions, methods or thoughts in the book. The editors and the publisher have attempted to trace the copyright holders of all material reproduced in this publication and apologize to copyright holders if permission has not been obtained. If any copyright holder has not been acknowledged, please write to us so we may rectify. Notice: Registered trademark of products or corporate names are used only for explanation and identification without intent of infringement. |
| Sommaire : |
Modelling And Simulation Of Waste Plastic Power Plant: A Theoretical Framework ....................................................................... ■ Abstract ............................................................................................... ■ Introduction ......................................................................................... ■ Methodology........................................................................................ 4 ■ Conclusion and Recommendations .................................................... 9 ■ References ........................................................................................ 11 CFD Simulation Of Ethanol Steam Reforming System For Hydrogen Production ................. 15 Abstract ............................................................................................. 15 Introduction ....................................................................................... 16 Materials and Methods ...................................................................... 21 Results .............................................................................................. 31 Discussion ......................................................................................... 41 Conclusions....................................................................................... 44 References ........................................................................................ 45 Experiential Learning via Open-Ended Laboratory Initiatives ............. 49 Abstract ............. 49 Chapter 4 Introduction ....................................................................................... 50 Concept of Open-Ended Laboratory ................................................. 51 Assessment Methods for Open-Ended Laboratory ........................... 59 Conclusions....................................................................................... 63 Acknowledgments ............................................................................. 64 References ........................................................................................ 65 Preparation and Application of the Hydrophilic Amino-Silicone Softener by Emulsion Polymerization ............................ 67 Abstract ......... 67 Introduction ....................................................................................... 68 Preparation and Modification Principle of Amino Silicone Oil............ 70 Material and Program........................................................................ 82 ■ Results And Discussion..................................................................... 88 ■ Conclusions....................................................................................... 97 References ........................................................................................ 98 Chapter 5 Separation of Chiral Compounds: Enantiomeric and Diastereomeric Mixtures ................................................ 101 Abstract ........................................................................................... 101 Introduction ..................................................................................... 102 Separation of Enantiomeric Mixtures Without Chiral Reagent ........ 103 Separation of Diastereomeric Mixtures (Recent Results) ................111 ■ Amino Acids and Their Mixtures As Resolving Agents .................... 115 Presence, Role, and Effect on the Diastereomer Separation of Achiral Additive ............................... 117 Effect of Solvate Forming Solvents And Molecules Having Similar Structure on the Results of Diastereomer Separation..................... 121 ■ Conclusion ...................................................................................... 122 References .................................................................................... 124 Chapter 6 Optimization of Chemical Processes by the Hydrodynamic Simulation Method (HSM) ........................... 135 ■ Abstract ........................................................................................... 135 Introduction ......................................... 136 Chapter 7 Materials and Methods .................................................................... 137 Results ............................................................................................ 140 Conclusions..................................................................................... 147 References ...................................................................................... 148 Modeling and Simulation of Mechanical Properties of Nano Particle Modified Polyamide 6 ........................................................... 151 Abstract ........................................................................................... 151 Introduction ..................................................................................... 152 Theoretical Approach ...................................................................... 153 Numerical Approach .... 156 Results and Discussion ................................................................... 160 Chapter 8 Conclusions..................................................................................... 162 References ..................................................................................... 163 Nanoindentation Study on Mechanical Properties of Nano-SiO2/Dental Resin Composites .................................. 165 Introduction ..................................................................... 166 Materials and Methods .................................................................... 167 vi Chapter 9 Results and Discussions ................................................................. 168 Summary ......................................................................................... 172 Acknowledgements ......................................................................... 173 References ..................................................................................... 174 Effect of Fiber Loading on the Dynamic Mechanical Properties of Jute Fiber Reinforced Polypropylene Composites .............. 177 Abstract ........................................................................................... 177 Inroduction ..................................................................................... 178 Materials and Method...................................................................... 180 Result and Discussion..................................................................... 182 Conclusion ...................................................................................... 185 Acknowledgements ......................................................................... 186 References ..................................................................................... 187 Chapter 10 Evaluation of Solution Thermodynamic Properties of Mixed Ionic Liquids at Different Temperatures (293.15–343.15) K Conclusions..................................................................................... 227 References ...................................................................................... 229 Chapter 12 New Opportunities to Improve the Enantiomeric and Diastereomeric Separations .............................................................. 233 ■ Abstract ........................................................................................... 233 Introduction ..................................................................................... 234 Ph Dependence of the Separation of Diastereomeric Mixtures ...... 235 vii Role of Eutectic Compositions, Crystallization Time and Solvent in Case of Diastereomer Separation .................................. 239 Crystallization of Diastereomers at Different Temperatures ............ 247 Effect of Ultrasound on the Composition of the Diastereomeric Salt ................................................................................................. Acknowledgments ........................................................................... 253 References ...................................................................................... 254 Citations .............................................................................................. 259 Index .................. 263 |
| Type de document : | Livres |




